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    • 1. 发明授权
    • Plasma reactor
    • 等离子体反应器
    • US07727489B2
    • 2010-06-01
    • US11374120
    • 2006-03-14
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • B01J19/08
    • H01J37/32009
    • A plasma reactor is provided with two or more plasma generating electrodes which are installed in series inside a gas passage in a casing, with each plasma generating electrode being electrically controlled independently. The surface area of the conductor on each unit electrode forming the plasma generating electrode installed on the upstream side of the gas passage is smaller than the surface area of the conductor on the unit electrode forming the plasma generating electrode installed on the downstream side of the gas passage. Plasma can be generated between each of the unit electrodes by supplying each of the plasma generating electrodes with independently controlled electric power. The plasma reactor can efficiently react specific components contained in the gas passing through the gas passage.
    • 等离子体反应器设置有两个或更多个等离子体产生电极,其串联安装在壳体中的气体通道内,每个等离子体产生电极被独立地电控制。 形成设置在气体通道上游侧的等离子体发生电极的各单位电极上的导电体的表面积小于形成设置在气体下游侧的等离子体发生电极的单位电极上的导体的表面积 通道。 可以通过向等离子体产生电极中的每一个提供独立控制的电力而在每个单元电极之间产生等离子体。 等离子体反应器可以有效地反应通过气体通道的气体中包含的特定组分。
    • 3. 发明授权
    • Plasma generation electrode, plasma reactor, and exhaust gas cleaning apparatus
    • 等离子体发生电极,等离子体反应器和废气净化装置
    • US07507934B2
    • 2009-03-24
    • US11717725
    • 2007-03-14
    • Atsuo KondouYasumasa FujiokaMasaaki MasudaKenji DosakaKeizo Iwama
    • Atsuo KondouYasumasa FujiokaMasaaki MasudaKenji DosakaKeizo Iwama
    • H05B1/02
    • H05H1/2406H05H2001/2418H05H2001/2437
    • A plasma generation electrode capable of subjecting predetermined components contained in a fluid to be treated to their respective reaction treatments with plasmas having different intensities optimized on a reaction basis, by passing merely once the fluid to be treated, is provided. In the plasma generation electrode, a unit electrode is composed of a tabular ceramic material serving as a dielectric material and an electrically conductive film disposed in the inside of the ceramic material, a plurality of unit electrodes are layered at a constant spacing, the distance between the electrically conductive films disposed in the unit electrodes adjacent to each other is varied partly or the dielectric constant of the ceramic material constituting the unit electrode is varied partly, and plasmas having different intensities can be generated partly in the spaces.
    • 一种等离子体产生电极,其能够通过仅传递一次待处理的流体,能够使待处理流体中包含的预定组分进行各自反应处理,所述等离子体具有通过反应优化的不同强度的等离子体而优化。 在等离子体发生电极中,单位电极由用作介电材料的片状陶瓷材料和设置在陶瓷材料内部的导电膜构成,多个单位电极以恒定的间距层叠, 设置在彼此相邻的单位电极中的导电膜部分地变化,或构成单位电极的陶瓷材料的介电常数部分变化,并且可以部分地在空间中产生具有不同强度的等离子体。
    • 4. 发明申请
    • Plasma reactor
    • 等离子体反应器
    • US20060208650A1
    • 2006-09-21
    • US11374120
    • 2006-03-14
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • Atsuo KondouYasumasa FujiokaTakeshi SakumaMasaaki MasudaKenji DosakaKeizo Iwama
    • H01J7/24
    • H01J37/32009
    • A plasma reactor is provided with two or more plasma generating electrodes which are installed in series inside a gas passage in a casing, with each plasma generating electrode being electrically controlled independently. The surface area of the conductor on each unit electrode forming the plasma generating electrode installed on the upstream side of the gas passage is smaller than the surface area of the conductor on the unit electrode forming the plasma generating electrode installed on the downstream side of the gas passage. Plasma can be generated between each of the unit electrodes by supplying each of the plasma generating electrodes with independently controlled electric power. The plasma reactor can efficiently react specific components contained in the gas passing through the gas passage.
    • 等离子体反应器设置有两个或更多个等离子体产生电极,其串联安装在壳体中的气体通道内,每个等离子体产生电极被独立地电控制。 形成设置在气体通道上游侧的等离子体发生电极的各单位电极上的导电体的表面积小于形成设置在气体下游侧的等离子体发生电极的单位电极上的导体的表面积 通道。 可以通过向等离子体产生电极中的每一个提供独立控制的电力而在每个单元电极之间产生等离子体。 等离子体反应器可以有效地反应通过气体通道的气体中包含的特定组分。
    • 9. 发明授权
    • Particulate material detecting apparatus
    • 颗粒物检测装置
    • US07846241B2
    • 2010-12-07
    • US12542805
    • 2009-08-18
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • B03C3/12B03C3/68
    • G01N15/0656G01M15/102
    • A particulate matter detecting apparatus (100) includes a detecting apparatus main body having a cavity (2) that is formed through the detecting apparatus main body, a particle charging section (3) that can charge particulate matter that has entered the cavity through an inflow-side end (6) of the cavity, a collection section (4) that can collect the particulate matter charged by the particle charging section (3) and measure the amount of the particulate matter, and an ion wind generation section (5) that allows the particulate matter charged by the particle charging section (3) to flow toward an outflow-side end (7) of the cavity, the particle charging section, the collection section (4), and the ion wind generation section (5) being provided inside the cavity in this order from the inflow-side end (6). The particulate matter detecting apparatus has a reduced size, shows only a small measurement error, and can be produced inexpensively.
    • 一种颗粒物检测装置(100),包括:检测装置主体,具有通过检测装置主体形成的空腔(2);粒子充填部(3),其能够通过流入 (6)的收集部(4),能够收集粒状物充填部(3)所装载的粒子状物并测定粒子状物的量的收集部(4)和离子风生成部(5) 允许由颗粒充填部分(3)装入的颗粒物质流向空腔的流出侧端部(7),颗粒充电部分,收集部分(4)和离子风发生部分(5)为 从流入侧端部(6)依次设置在空腔内。 颗粒物检测装置的尺寸减小,仅显示小的测量误差,并且可以廉价地生产。
    • 10. 发明申请
    • PARTICULATE MATERIAL DETECTING APPARATUS
    • 颗粒材料检测装置
    • US20090308251A1
    • 2009-12-17
    • US12542805
    • 2009-08-18
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • Atsuo KondouTakeshi SakumaYasumasa Fujioka
    • B03C3/68
    • G01N15/0656G01M15/102
    • A particulate matter detecting apparatus (100) includes a detecting apparatus main body having a cavity (2) that is formed through the detecting apparatus main body, a particle charging section (3) that can charge particulate matter that has entered the cavity through an inflow-side end (6) of the cavity, a collection section (4) that can collect the particulate matter charged by the particle charging section (3) and measure the amount of the particulate matter, and an ion wind generation section (5) that allows the particulate matter charged by the particle charging section (3) to flow toward an outflow-side end (7) of the cavity, the particle charging section, the collection section (4), and the ion wind generation section (5) being provided inside the cavity in this order from the inflow-side end (6). The particulate matter detecting apparatus has a reduced size, shows only a small measurement error, and can be produced inexpensively.
    • 一种颗粒物检测装置(100),包括:检测装置主体,具有通过检测装置主体形成的空腔(2);粒子充填部(3),其能够通过流入 (6)的收集部(4),能够收集粒状物充填部(3)所装载的粒子状物并测定粒子状物的量的收集部(4)和离子风生成部(5) 允许由颗粒充填部分(3)装入的颗粒物质流向空腔的流出侧端部(7),颗粒充电部分,收集部分(4)和离子风发生部分(5)为 从流入侧端部(6)依次设置在空腔内。 颗粒物检测装置的尺寸减小,仅显示小的测量误差,并且可以廉价地生产。